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DEVELOPMENT OF EVALUATION SYSTEM FOR STYLE DESIGN USING MIXED REALITY TECHNOLOGY

机译:基于混合现实技术的造型设计评估系统开发

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Currently industrial design is mainly done by CAD and mock-up is created to evaluate the design. This process is repeated from the rough sketches to the final detailed mock-up until the designer is satisfied. In this process, creating the mock-up, especially detailed mock-up, is quite costly. Hence, there is a need to improve the efficiency of mock-up fabrication. One of the strategies for realizing this is to use virtual models (VM) instead of mock-up. VM is a model which is created on computer by 3D computer graphics, and it allows realistic graphical modeling which can be modified easily, reduces time considerably, and enables dynamic viewing of models from any angle and orientation. Despite this, mock-ups are still required because the process of design evaluation by touching physical models (PM) is still important to designers. To resolve this disadvantage of VM, this paper proposes a new evaluation system for industrial design. With this system, VM and the rapid prototyping mock-up are overlapped in virtual space to produce a tangible VM. This new type of VM functions just like a detailed mock-up but can be created much faster and cheaper. This system employs the concept of Augmented Virtuality (AV), which is mainly based on virtual space and real objects are added to reinforce the virtual space. In this case, haptic information from the rapid prototyping mock-up is added to optical information from the VM. When estimating the 3D position of a real object, optical information is used considerably more than haptic information. Therefore, if there are only a few positional or geometrical differences between the rapid prototyping mock-up and the VM, the differences can be offset by the (incorporated into the) optical information. For this reason, if the designer needs to modify the product shape, only the VM needs to be modified, allowing old mock-ups to be used repeatedly. This means that designers can evaluate a variety of product designs with only one mock-up, thus reducing both time and the costs for creating a mock-up. The operator wears a data glove on his/her hand to construct a virtual hand in the virtual space. With this virtual hand, the operator can also evaluate the user interface (UI) of the product by means of pushing buttons or watching display on the VM. This paper also provides a new method for overlapping the virtual space and real space.
机译:目前,工业设计主要由CAD完成,并创建了模型来评估设计。从粗略草图到最终的详细模型,都要重复此过程,直到设计师满意为止。在此过程中,创建模型,尤其是详细的模型非常昂贵。因此,需要提高模型制造的效率。实现这一目标的策略之一是使用虚拟模型(VM)而非模型。 VM是通过3D计算机图形在计算机上创建的模型,它允许进行现实的图形建模,可以轻松地对其进行修改,大大减少了时间,并且可以从任何角度和方向动态查看模型。尽管如此,仍然需要模型,因为通过触摸物理模型(PM)进行设计评估的过程对设计师仍然很重要。为了解决虚拟机的这一缺点,本文提出了一种新的工业设计评估系统。使用此系统,虚拟机和快速原型制作模型在虚拟空间中重叠以生成有形的虚拟机。这种新型的VM功能类似于详细的模型,但可以更快,更便宜地创建。该系统采用增强虚拟化(AV)的概念,该概念主要基于虚拟空间,并添加了真实对象以增强虚拟空间。在这种情况下,来自快速原型模型的触觉信息将添加到来自VM的光学信息中。在估计真实物体的3D位置时,光学信息的使用远多于触觉信息。因此,如果快速原型制作模型和VM之间只有几个位置或几何差异,则这些差异可以被(合并到)光学信息中抵消。因此,如果设计人员需要修改产品形状,则只需修改虚拟机,即可重复使用旧的模型。这意味着设计人员仅需一个模型就可以评估多种产品设计,从而减少了创建模型的时间和成本。操作员将数据手套戴在他/她的手上,以在虚拟空间中构造虚拟手。使用此虚拟手,操作员还可以通过按按钮或观看VM上的显示来评估产品的用户界面(UI)。本文还提供了一种重叠虚拟空间和真实空间的新方法。

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